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首页> 外文期刊>Applied and Environmental Microbiology >Novel Outer Membrane Protein Involved in Cellulose and Cellooligosaccharide Degradation by Cytophaga hutchinsonii
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Novel Outer Membrane Protein Involved in Cellulose and Cellooligosaccharide Degradation by Cytophaga hutchinsonii

机译:新型的外膜蛋白参与了细胞丝藻的纤维素和纤维素低聚糖降解

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Cytophaga hutchinsonii is an aerobic cellulolytic soil bacterium which was reported to use a novel contact-dependent strategy to degrade cellulose. It was speculated that cellooligosaccharides were transported into the periplasm for further digestion. In this study, we reported that most of the endoglucanase and β-glucosidase activity was distributed on the cell surface of C. hutchinsonii. Cellobiose and part of the cellulose could be hydrolyzed to glucose on the cell surface. However, the cell surface cellulolytic enzymes were not sufficient for cellulose degradation by C. hutchinsonii. An outer membrane protein, CHU_1277, was disrupted by insertional mutation. Although the mutant maintained the same endoglucanase activity and most of the β-glucosidase activity, it failed to digest cellulose, and its cellooligosaccharide utilization ability was significantly reduced, suggesting that CHU_1277 was essential for cellulose degradation and played an important role in cellooligosaccharide utilization. Further study of cellobiose hydrolytic ability of the mutant on the enzymatic level showed that the β-glucosidase activity in the outer membrane of the mutant was not changed. It revealed that CHU_1277 played an important role in assisting cell surface β-glucosidase to exhibit its activity sufficiently. Studies on the outer membrane proteins involved in cellulose and cellooligosaccharide utilization could shed light on the mechanism of cellulose degradation by C. hutchinsonii.
机译:Cytophaga hutchinsonii是一种好氧纤维素分解土壤细菌,据报道使用一种新型的接触依赖性策略降解纤维素。据推测,纤维寡糖被运输到周质中以进一步消化。在这项研究中,我们报道了大多数内切葡聚糖酶和β-葡萄糖苷酶活性分布在哈氏梭菌的细胞表面。纤维二糖和部分纤维素可以在细胞表面水解为葡萄糖。然而,细胞表面纤维素分解酶不足以使哈氏梭菌降解纤维素。外膜蛋白CHU_1277被插入突变破坏。尽管该突变体维持相同的内切葡聚糖酶活性和大多数β-葡萄糖苷酶活性,但它无法消化纤维素,其纤维寡糖利用能力显着降低,表明CHU_1277对纤维素降解至关重要,并在纤维寡糖利用中发挥重要作用。进一步研究该突变体在酶水平上的纤维二糖水解能力表明,该突变体外膜中的β-葡萄糖苷酶活性没有改变。揭示了CHU_1277在协助细胞表面β-葡萄糖苷酶充分发挥其活性中起重要作用。对涉及纤维素和纤维寡糖利用的外膜蛋白的研究可以阐明哈氏梭菌对纤维素的降解机理。

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